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Astrophysics Remote Jobs in Colorado (NOW HIRING)

Multi-Disciplinary Optical Engineer

Denver, CO · On-site +1

$132K - $171K/yr

TS/SCI with Poly Potential for Remote Work: ORA_ON_SITE Description SAIC is seeking a senior ... Qualifications *  Minimum of a bachelor's degree in Optics, Planetary Science, Astronomy ...

Astrophysics Remote information

What is astrophysics remote work?

Astrophysics remote work involves conducting research, data analysis, and collaboration in the field of astrophysics from a location outside of a traditional observatory or research institution, often from home. Remote astrophysicists use computer simulations, analyze data from telescopes and satellites, and collaborate with other scientists online. This type of work relies heavily on strong computational skills, access to data archives, and communication tools for virtual teamwork. It can involve tasks such as modeling cosmic phenomena, publishing findings, and teaching or mentoring students remotely.

What are the key skills and qualifications needed to thrive as an astrophysicist working remotely?

To thrive as a remote Astrophysicist, you need a strong background in physics, mathematics, and astronomy, typically supported by an advanced degree (Ph.D.) in astrophysics or a related field. Proficiency with data analysis software (like Python, MATLAB), astronomical databases, and remote access to observatory systems is essential. Excellent problem-solving, self-motivation, and clear written communication are vital soft skills for independent research and collaboration with global teams. These skills and qualities are crucial for conducting innovative research, analyzing complex data, and contributing effectively to the scientific community from a remote setting.

What are some common challenges faced by remote astrophysicists, and how can they be addressed?

Remote astrophysicists often encounter challenges such as limited access to on-site observatory equipment and difficulties in real-time collaboration with global teams. These can be addressed by leveraging advanced remote access software for telescope data, participating in regular virtual meetings, and utilizing cloud-based platforms for data sharing and analysis. Building strong communication habits and aligning with team schedules across different time zones are also essential for success in a remote astrophysics role.

What is the difference between Astrophysics Remote vs Astrophysics Research Assistant?

AspectAstrophysics RemoteAstrophysics Research Assistant
Required CredentialsMaster's or PhD in Astrophysics or related fieldBachelor's or Master's in Astrophysics or Physics
Work EnvironmentRemote, often independentLaboratory or university campus, sometimes remote
Employer & Industry UsageUniversities, research institutes, space agenciesUniversities, research labs, observatories
Common Search & Comparison IntentRemote astrophysics roles, online astrophysics jobsResearch assistant positions in astrophysics

Astrophysics Remote roles typically involve independent research, data analysis, and collaboration with institutions remotely, often requiring advanced degrees. Astrophysics Research Assistants usually work in labs or on-site at universities, assisting with experiments and data collection. Both roles are integral to astrophysics research but differ mainly in work environment and experience level.

Is there a high demand for astrophysics remote?

The demand for remote astrophysics positions is relatively limited, as many roles require access to specialized equipment and in-person collaboration. However, some remote opportunities exist in data analysis, research, and computational modeling, often requiring strong programming skills and knowledge of scientific tools. Overall, remote astrophysics jobs are less common than on-site roles but can be found in research institutions and academia.

What are the most commonly searched types of Astrophysics jobs in Colorado?

The most popular types of Astrophysics jobs in Colorado are:

What are popular job titles related to Astrophysics Remote jobs in Colorado?

For Astrophysics Remote jobs in Colorado, the most frequently searched job titles are:

What job categories do people searching Astrophysics Remote jobs in Colorado look for?

The top searched job categories for Astrophysics Remote jobs in Colorado are:

What cities in Colorado are hiring for Astrophysics Remote jobs?

Cities in Colorado with the most Astrophysics Remote job openings:

Infographic showing various Astrophysics Remote job openings in Colorado as of August 2026, with employment types broken down into 63% Full Time, 31% Part Time, and 6% Contract. Highlights an 100% Remote job distribution.

Multi-Disciplinary Optical Engineer

Denver, CO • On-site, Remote


SAIC
IT Services • 10K+ employees

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$132K - $171K/yr

Full-time

Posted 21 days ago


Job description

Job ID: 2615375

Location: Denver, CO, US

Date Posted: 2026-08-07

Category: Engineering and Sciences

Subcategory: Mod/Sim Analyst

Schedule: Full-Time

Shift: Day Job

Travel: Yes - 10% of the time

Minimum Clearance Required: TS.SCI

Clearance Level Must Be Able to Obtain: TS/SCI with Poly

Potential for Remote Work: ORA_ON_SITE


Description

SAIC is seeking a senior Multi-Disciplinary Optical Engineer to join the Space and Intelligence Business Group. You would work on a joint Intelligence Community (IC) and Department of Defense (DoD) crown jewel program providing highly specialized space/counter-space engineering, scientific, and analytical services from Aurora/Denver, Colorado. We support the Nation’s leading-edge IC and DoD space programs and offer compelling, deep-technical work that has direct influence and impact on program development and operations. Our team has Subject Matter Experts (SMEs) across a variety of disciplines, including physics, math, RF, optics, space acquisition and operations, and intelligence collection and analysis.

The Senior Optical Project Engineer will work in a collaborative team-focused environment of U.S. Government civilians and contractors solving applied technical problems and developing usable solutions for multiple space-related capabilities and threats. 

The ideal candidate will have knowledge and experience with the performance of:

  • Ground or space-based optical or laser systems, the fields of photonics or optoelectronics, space object optical characterization, or optical data processing techniques. 
  •  Optical systems in Space Domain Awareness (SDA) applications. 
  • Conduct projects focused on program-specific analysis, foreign threat capabilities and development, and phenomenology research. 
  • Have experience generating new satellite models or adapting existing mission partner models for on-orbit simulation scenarios.  
  • Be fluent with the synthesis and application of space object optical/electro-optical (EO) signatures.  
  • Create/understand EO sensor models, lighting and environmental effects to simulate the space object detection, feature discrimination, and/or characterization by SDA systems.
  • Be able to design, develop, and quantify results for satellite simulations that accurately represent the system state and have familiarity with post-processing techniques of optical sensor data that extract additional insights or translate the data into operationally relevant information.
  • Possess knowledge of optical systems and their use in SDA. 
  • Have experience with modeling and simulation of optical and laser systems such as LEEDR, HardShell or Helios. 
  • Be motivated by problem solving and developing a range of solutions, over system development.
  • This position qualifies for enhanced benefits.
     

Duties and responsibilities include: 

  • Perform program-specific analyses, understand foreign threat capabilities and development, and conduct optical and laser phenomenology research.
  • Perform rapid prototyping of optical modeling and simulation tools of various fidelities.
  • Design and edit satellite models and optical simulations to inform analyses and trade studies related to operational scenarios.
  • Develop estimates of space object optical signatures using physics-based methods or via similarity to existing data.
  • Develop and refine innovative concepts for space laser systems and architectures, knowledge of advanced engineering principles and state-of-the-art technology.[DO1.1].
  • Create system Concept of Operations (CONOPS), considering operational trade-offs, environmental effects, and mission requirements.
  • Conduct detailed assessments and analysis of space laser system performance, focusing on rigorous link budget modeling, system efficiencies, and platform-specific trade-offs.[DO2.1].
  • Ability to conduct link budget analysis, considering various system and operational parameters. Evaluate the impacts of different modulation techniques,  and photonics technologies on overall system performance.
  • Simulate SDA data of space objects that represent the sensor system’s spatial, spectral, and other capabilities under representative seeing conditions.
  • Quantify impacts and sensitivity to changes in CONOPS, scenarios and/or threats.  
  • Develop and brief analytical results for stand-alone and broader assessment products.  
  • Achieve detailed understanding of multiple satellite systems, designs, operations, and classifications in order to make design or CONOPS recommendations.  
  • Develop and maintain in-depth knowledge of U.S. and Foreign SDA optical capabilities.  
  • Frequently interact with program managers, SETAs, FFRDCs and external stakeholders.  
  • Develop productive relationships with the Program Office, Prime, and Subcontract counterparts, functional IC or DoD counterparts, and other SMEs.

Qualifications

  •  Minimum of a bachelor’s degree in Optics, Planetary Science, Astronomy, Pphysics, Engineering, or Math, or related field and 14 or more years 14 or more with a Masters, 9 or more with a PhD) of direct experience.  
  • Active TS/SCI Clearance with Special Access eligibility and consent to a Counter Intelligence (CI) polygraph. US Citizenship is required
  • Experience with ground or space-based optical or laser systems, the fields of photonics or optoelectronics, space object optical characterization or data processing techniques. 
  • Understanding material properties, and component characteristics to determine performance, susceptibilities, and operational reliability. 
  • Experience with project or task technical leadership.  
  • Experience with JIRA project management tool and familiarity with Agile concepts.
  • Understanding of fundamentals of astrodynamics and space systems. 
  • Knowledge of space system acquisitions or space technology developments.
  • Demonstrated record of effective individual and group work behaviors, with abilities to proactively initiate and operate in dynamic and incompletely defined environments.
  • Strong written and verbal communication skills with experience conveying technical concepts, results, and summaries to internal customers, external customers, and stakeholders of diverse technical backgrounds.

Strongly Desired Skills:

  • Master’s degree in Optics, Planetary science, Astronomy, Physics, Engineering, Math, or related field Physics, Engineering, or Mathematics. 
  • Familiarity or experience with optical systems in Space Domain Awareness (SDA) applications. 
  • Working knowledge of laser propagation, atm atmospheric scattering, and laser communication modulation formats and techniques. 
  • Experience with optical communications and space hardware testing including development of testbeds, ground support test equipment, test programs and management of test program execution for lasercom, component, units, subsystems or systems. 
  • Familiarity with National Security Space architecture (IC and/or DoD). 
  • Familiarity with US Intelligence Community IC resources and products. 
  • Fluent in specialized software tools or scripting languages relevant for space systems, such as MATLAB, Python, C++, or Zemax and MODTRAN. 
  • Experience modeling optical systems in STK. 
  • Previous experience with laser communications hardware and systems. 
  • Experience performing atmospheric transmission modelling.  

Target salary range: $160,001 - $200,000. The estimate displayed represents the typical salary range for this position based on experience and other factors.


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